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Improved spinal cord gray matter morphology induced bySpirulina platensisfollowing spinal cord injury in rat models

机译:改善脊髓灰质形态素诱导的大鼠模型脊髓损伤

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Despite intense preclinical research focusing on developing potential strategies of mitigating spinal cord injury (SCI), SCI still results in permanent, debilitating symptoms for which there are currently no effective pharmacological interventions to improve the recovery of the fine ultrastructure of the spinal cord.Spirulina platensisis thought to have potential neuroprotective effects. We have previously demonstrated its protective potential on the lesioned corticospinal tracts and behavioral recovery. In this study, spirulina, known for its neuroprotective properties was used to further explore its protective effects on spinal cord gray matter ultrastructural. Twenty-four Sprague-Dawley rats were used and divided into sham group (laminectomy without SCI), control group (SCI withoutS. platensis), andS. platensisgroup (SCI + 180 mg/kgS. platensis). All animals were anesthetized via intramuscular injection. A partial crush injury was induced at the level of T12. The rats were humanely sacrificed for 28 days postinjury for ultrastructural study. There were significant mean differences with respect to pairwise comparisons between the ultrastructural grading score of neuronal perikarya of control and theS. platensisfollowing injury at day 28, which correlates with the functional locomotor recovery at this timepoint in our previous study. The group supplemented with spirulina, thus, revealed a better improvement in the fine ultrastructure of the spinal cord gray matter when compared to the control group thereby suggesting neuroprotective potentials of spirulina in mitigating the effects of spinal cord injury and inducing functional recovery.
机译:尽管临床前研究集中于开发缓解脊髓损伤(SCI)的潜在策略,但SCI仍然会导致永久性的衰弱症状,目前还没有有效的药理学干预措施来改善脊髓精细超微结构的恢复。钝顶螺旋藻被认为具有潜在的神经保护作用。我们之前已经证明了它对受损皮质脊髓束和行为恢复的保护潜力。在这项研究中,以神经保护特性闻名的螺旋藻被用来进一步探索其对脊髓灰质超微结构的保护作用。24只Sprague-Dawley大鼠被分为假手术组(无脊髓损伤的椎板切除术)、对照组(无脊髓损伤的高原)和对照组。血小板组(SCI+180 mg/kg血小板)。所有动物均经肌肉注射麻醉。在T12水平诱发部分挤压伤。伤后28天,将大鼠人道处死,进行超微结构研究。对照组和对照组的神经元胞体超微结构分级评分在成对比较方面存在显著的平均差异。在我们之前的研究中,第28天的损伤后出现的血小板与此时的功能性运动恢复相关。因此,与对照组相比,补充螺旋藻的组显示脊髓灰质的精细超微结构有更好的改善,从而表明螺旋藻在减轻脊髓损伤和诱导功能恢复方面具有神经保护潜力。

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